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首页> 外文期刊>Organometallics >Synthesis and characterization of [Cp2V(mu-eta(2):eta(4)-butadiyne)ZrCp ' 2] heterodimetallic complexes (Cp ' = C(5)H(4)t-Bu, C5H4Me). Formation mechanism and theoretical (ELF) evidence for the existence of planar tetracoordinate carbon (ptC) [Review
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Synthesis and characterization of [Cp2V(mu-eta(2):eta(4)-butadiyne)ZrCp ' 2] heterodimetallic complexes (Cp ' = C(5)H(4)t-Bu, C5H4Me). Formation mechanism and theoretical (ELF) evidence for the existence of planar tetracoordinate carbon (ptC) [Review

机译:[Cp2V(mu-eta(2):eta(4)-丁二炔)ZrCp'2]异双金属配合物(Cp'= C(5)H(4)t-Bu,C5H4Me)的合成和表征。平面四配位碳(ptC)存在的形成机理和理论(ELF)证据[综述

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摘要

Reaction of (C5H4R)(2)Zr(C=CPh)(2) (R = Me, t-Bu) with vanadocene Cp2V yields the heterodimetallic complexes Cp2V(mu-eta(2):eta(4)-butadiyne)Zr(C5H4R)(2) (4, R = t-Bu; 5, R = Me). Both compounds have been characterized by elemental analysis, Raman spectroscopy, and magnetic susceptibility. According to the X-ray structure of Cp2V(mu-eta(2):eta(4)-butadiyne)Zr(C(5)H(4)t-Bu)(2) (4), the [Cp2V] and [(C(6)H(4)t-Bu)(2)Zr] metallocene moieties are bonded-to a butadiene framework through the two internal carbon atoms for [Cp2V] and through the two internal and the two external carbon atoms for [(C(5)H(4)t-Bu)(2)Zr]. The distances and angles observed around the internal carbon atoms of the butadiene framework indicate that both carbons are planar and tetracoordinate. These structural considerations are supported by a topological analysis of the electron localization function (ELF). The existence of the (C5H4R)(2)Zr(eta(4):1,2,3,4-PhC=C=C=CPh) (R = H, SiMe3, t-Bu, Me) zirconacyclocumulene species as a key intermediate in the formation of the (Cp2V(mu-eta(2):eta(4)-butadiyne)Zr(C5H4R)(2) heterodimetallic compounds is evidenced by NMR studies of either the formation of such zirconacyclocumulene species by addition to (C5H4R)(2)Zr(C=CPh)(2) of a catalytic amount of Cp2V or of the formation of compounds 4 or 5 by addition of Cp2V to (C5H4R)(2)Zr(eta(4):1,2,3,4-PhC=C=C=CPh) (R = t-Bu, Me, respectively; synthesized from dialkynyl zirconocene complexes (C5H4R)(2)Zr(C=CPh)(2) via h nu daylight). The X-ray structure of the (C5H4R)(2)Zr(C=CPh)(2) (R = H (6), t-Bu (7), SiMe3 (8)) dialkynyl zirconocene complexes is also reported. [References: 114]
机译:(C5H4R)(2)Zr(C = CPh)(2)(R = Me,t-Bu)与钒电子Cp2V的反应产生杂二金属配合物Cp2V(mu-eta(2):eta(4)-丁二炔)Zr (C 5 H 4 R)(2)(4,R = t-Bu; 5,R = Me)。两种化合物均已通过元素分析,拉曼光谱和磁化率进行了表征。根据Cp2V(mu-eta(2):eta(4)-丁二炔)Zr(C(5)H(4)t-Bu)(2)(4)的X射线结构,[Cp2V]和[(C(6)H(4)t-Bu)(2)Zr]茂金属部分通过[Cp2V]的两个内部碳原子和通过[Cp2V]的两个内部和两个外部碳原子键合至丁二烯骨架[(C(5)H(4)t-Bu)(2)Zr]。在丁二烯骨架的内部碳原子周围观察到的距离和角度表明,这两个碳都是平面的和四配位的。这些结构上的考虑得到电子定位功能(ELF)拓扑分析的支持。 (C5H4R)(2)Zr(eta(4):1,2,3,4-PhC = C = C = CPh)(R = H,SiMe3,t-Bu,Me)氧化锆环枯烯物种的存在(Cp2V(mu-eta(2):eta(4)-butadiyne)Zr(C5H4R)(2)异双金属化合物形成的关键中间体已通过NMR研究证明,通过添加( C5H4R)(2)Zr(C = CPh)(2)催化量的Cp2V或通过将Cp2V加至(C5H4R)(2)Zr(eta(4):1,2形成的化合物4或5 ,3,4-PhC = C = C = CPh)(R = t-Bu,Me;分别通过h nu日光从二炔基锆茂复合物(C5H4R)(2)Zr(C = CPh)(2)合成)。还报道了(C5H4R)(2)Zr(C = CPh)(2)(R = H(6),t-Bu(7),SiMe3(8))二炔基锆茂复合物的X射线结构[[参考:114]

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